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合成磷脂类似物对蛋白激酶C、(钠钾)激活的三磷酸腺苷酶和钠泵的抑制作用。

Inhibition of protein kinase C, (sodium plus potassium)-activated adenosine triphosphatase, and sodium pump by synthetic phospholipid analogues.

作者信息

Zheng B, Oishi K, Shoji M, Eibl H, Berdel W E, Hajdu J, Vogler W R, Kuo J F

机构信息

Department of Pharmacology, Emory University School of Medicine, Atlanta, Georgia 30322.

出版信息

Cancer Res. 1990 May 15;50(10):3025-31.

PMID:2159369
Abstract

The effects and modes of action of certain antineoplastic phospholipid analogues (racemic 1-O-octadecyl-2-O-methyl glycero-3-phosphocholine, BM 41.440, JH-1, CV-3988, and HePC) on (sodium plus potassium)-activated adenosine triphosphatase (Na,K-ATPase) and sodium pump activities were investigated. Inhibition of Na,K-ATPase in purified rat brain synaptosomal membranes by these lipids, in contrast to ouabain, was subject to membrane surface dilution and unaffected by whether the reaction was started with KCl, NaCl, or ATP. Kinetic analysis indicated that the analogues, again dissimilar to ouabain, were likely to interact directly or indirectly with sodium-binding sites of Na,K-ATPase located at the intracellular surface of the plasma membrane, a conclusion also supported by studies using the inside-out vesicles of human erythrocyte membranes. The studies also showed that ouabain (but not the lipids) increased the affinity constant of Na,K-ATPase for K+, whereas the lipids (but not ouabain) increased that for Na+. The lipids also inhibited 86Rb uptake by intact human leukemia HL60 cells at potencies quite comparable to those seen for inhibition of purified protein kinase C or Na,K-ATPase. It is suggested that Na,K-ATPase (sodium pump) might represent a hitherto unrecognized site of action for the lipid analogues, and that the antineoplastic effects of the agents might be due to, in part, inhibition of both protein kinase C and Na,K-ATPase and perhaps other membrane-associated enzymes.

摘要

研究了某些抗肿瘤磷脂类似物(消旋1-O-十八烷基-2-O-甲基甘油-3-磷酸胆碱、BM 41.440、JH-1、CV-3988和HePC)对(钠加钾)激活的三磷酸腺苷酶(Na,K-ATP酶)和钠泵活性的影响及作用模式。与哇巴因不同,这些脂质对纯化的大鼠脑突触体膜中Na,K-ATP酶的抑制作用受膜表面稀释的影响,且不受反应起始物是KCl、NaCl还是ATP的影响。动力学分析表明,这些类似物与哇巴因不同,可能直接或间接与位于质膜细胞内表面的Na,K-ATP酶的钠结合位点相互作用,使用人红细胞膜的内翻囊泡进行的研究也支持了这一结论。研究还表明,哇巴因(而非这些脂质)增加了Na,K-ATP酶对K+的亲和常数,而这些脂质(而非哇巴因)增加了对Na+的亲和常数。这些脂质还抑制完整的人白血病HL60细胞对86Rb的摄取,其效力与抑制纯化的蛋白激酶C或Na,K-ATP酶相当。有人提出,Na,K-ATP酶(钠泵)可能是这些脂质类似物迄今未被认识的作用位点,这些药物的抗肿瘤作用可能部分归因于对蛋白激酶C和Na,K-ATP酶以及可能其他膜相关酶的抑制。

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